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- W2019969883 abstract "Here we discuss in terms of several specific examples, some important hydrodynamic effects which arise in connection with the discharge of waste, including effects which are due to buoyancy and stratification. Specific models of important discharge flows which are discussed in some detail are: the rise of a hot chimney plume into a stable stratified atmosphere; and the spreading of an underwater thermal discharge along the free surface of a moving body of water. The plume has been much discussed previously, and the present understanding is reviewed. The spreading of a thermal discharge, however, does not seem to have been previously treated in detail. Plume motions in a stable stratified atmosphere involve different regimes of motion. The ideal bent-over and rising chimney plume comprises a self-similar, self-connecting motion for which predictions may be made with the aid of conservation laws. These laws are discussed together with explicit results derived from their application; comparisons are made with full-scale data. When buoyant material is discharged into a shallow stream, it rises to the free surface where it spreads. A model of the spreading mechanism is postulated, an asymptotic (thin layer) theory is derived, and predictions of the spreading behavior are made. The possible influences of turbulent mixing due to initial and maintained sources of turbulence are discussed, and a comparison is made with limited full-scale data." @default.
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- W2019969883 date "1972-01-01" @default.
- W2019969883 modified "2023-09-27" @default.
- W2019969883 title "Hydrodynamic Aspects of Waste Discharge" @default.
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- W2019969883 doi "https://doi.org/10.2514/3.62891" @default.
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